Search NASA⌕ Search

NASA NTRS · 20170010711

Control Design for an Advanced Geared Turbofan Engine

Abstract

This paper describes the design process for the control system of an advanced geared turbofan engine. This process is applied to a simulation that is representative of a 30,000 pound-force thrust class concept engine with two main spools, ultra-high bypass ratio, and a variable area fan nozzle. Control system requirements constrain the non-linear engine model as it operates throughout its flight envelope of sea level to 40,000 feet and from 0 to 0.8 Mach. The purpose of this paper is to review the engine control design process for an advanced turbofan engine configuration. The control architecture selected for this project was developed from literature and reflects a configuration that utilizes a proportional integral controller with sets of limiters that enable the engine to operate safely throughout its flight envelope. Simulation results show the overall system meets performance requirements without exceeding operational limits.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Chapman, Jeffryes W., Litt, Jonathan S.. 2017-07-10. Control Design for an Advanced Geared Turbofan Engine. https://ntrs.nasa.gov/citations/20170010711

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related reports

T-MATS Toolbox for the Modeling and Analysis of Thermodynamic Systems

The Toolbox for the Modeling and Analysis of Thermodynamic Systems (T-MATS) is a MATLABSimulink (The MathWorks Inc.) plug-in for creating and simulating thermodynamic systems and controls. The package contains generic parameterized components that can be combined with a variable input iterative solver and optimization algorithm to create complex system models, such as gas turbines.

system modeling↗